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鍙冩暩(sh霉)璩囨枡
鍨嬭櫉锛� MCF5280CVM66
寤犲晢锛� Freescale Semiconductor
鏂囦欢闋佹暩(sh霉)锛� 410/766闋�
鏂囦欢澶�?銆�?/td> 0K
鎻忚堪锛� IC MPU 32BIT COLDF 256-MAPBGA
妯欐簴鍖呰锛� 90
绯诲垪锛� MCF528x
鏍稿績铏曠悊鍣細 Coldfire V2
鑺珨灏哄锛� 32-浣�
閫熷害锛� 66MHz
閫i€氭€э細 CAN锛孍BI/EMI锛屼互澶恫(w菐ng)锛孖²C锛孲PI锛孶ART/USART
澶栧湇瑷倷锛� DMA锛孡VD锛孭OR锛孭WM锛學DT
杓稿叆/杓稿嚭鏁�(sh霉)锛� 142
绋嬪簭瀛樺劜鍣ㄩ鍨嬶細 ROMless
RAM 瀹归噺锛� 64K x 8
闆诲 - 闆绘簮 (Vcc/Vdd)锛� 2.7 V ~ 3.6 V
鏁�(sh霉)鎿�(j霉)杞夋彌鍣細 A/D 8x10b
鎸暕鍣ㄥ瀷锛� 澶栭儴
宸ヤ綔婧害锛� -40°C ~ 85°C
灏佽/澶栨锛� 256-LBGA
鍖呰锛� 鎵樼洡
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I2C Interface
24-14
Freescale Semiconductor
For a master receiver to terminate a data transfer, it must inform the slave transmitter by not
acknowledging the last data byte. This is done by setting I2CR[TXAK] before reading the next-to-last
byte. Before the last byte is read, a STOP signal must be generated, as in the following example.
1. Decrement RXCNT.
2. If last byte (RXCNT = 0) go to step #4.
3. If next to last byte (RXCNT = 1), set I2CR[TXAK] to disable ACK and go to step #5.
4. This is last byte, so clear I2CR[MSTA] to generate a STOP signal.
5. Read data from I2DR.
6. If there is more data to be read (RXCNT
鈮� 0), go to step #1 if desired.
24.4.5
Generation of Repeated START
If the master wants the bus after the data transfer, it can signal another START followed by another slave
address without signaling a STOP, as in the following example.
1. Generate a repeated START by setting I2CR[RSTA].
2. Transmit the calling address via I2DR.
24.4.6
Slave Mode
In the slave interrupt service routine, software must poll the I2SR[IAAS] bit to determine if the controller
has received its slave address. If IAAS is set, software must set the transmit/receive mode select bit
(I2CR[MTX]) according to the I2SR[SRW]. Writing to I2CR clears IAAS automatically. The only time
IAAS is read as set is from the interrupt at the end of the address cycle where an address match occurred;
interrupts resulting from subsequent data transfers have IAAS cleared. A data transfer can now be initiated
by writing information to I2DR for slave transmits, or read from I2DR in slave-receive mode. A dummy
read of I2DR in slave/receive mode releases I2C_SCL, allowing the master to send data.
In the slave transmitter routine, I2SR[RXAK] must be tested before sending the next byte of data. Setting
RXAK means an end-of-data signal from the master receiver, after which software must switch it from
transmitter to receiver mode. Reading I2DR releases I2C_SCL so the master can generate a STOP signal.
24.4.7
Arbitration Lost
If several devices try to engage the bus at the same time, one becomes master. Hardware immediately
switches devices that lose arbitration to slave receive mode. Data output to I2C_SDA stops, but I2C_SCL
continues generating until the end of the byte during which arbitration is lost. An interrupt occurs at the
falling edge of the ninth clock of this transfer with I2SR[IAL] set and I2CR[MSTA] cleared.
If a non-master device tries to transmit or execute a START, hardware inhibits the transmission, clears
MSTA without signaling a STOP, generates an interrupt to the CPU, and sets IAL to indicate a failed
attempt to engage the bus. When considering these cases, slave service routine should first test IAL and
software should clear it if it is set.
MCF5282 and MCF5216 ColdFire Microcontroller User鈥檚 Manual, Rev. 3
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PDF鎻忚堪
VE-234-CU CONVERTER MOD DC/DC 48V 200W
VE-J6B-IX-S CONVERTER MOD DC/DC 95V 75W
MCF5280CVF66 IC MPU 32BIT 66MHZ 256-BGA
VE-J63-IX-S CONVERTER MOD DC/DC 24V 75W
VE-233-CU CONVERTER MOD DC/DC 24V 200W
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MCF5280CVM80 鍔熻兘鎻忚堪:32浣嶅井鎺у埗鍣� - MCU MCF5216 V2CORE NOFLASH RoHS:鍚� 鍒堕€犲晢:Texas Instruments 鏍稿績:C28x 铏曠悊鍣ㄧ郴鍒�:TMS320F28x 鏁�(sh霉)鎿�(j霉)绺界窔瀵害:32 bit 鏈€澶ф檪閻橀牷鐜�:90 MHz 绋嬪簭瀛樺劜鍣ㄥぇ灏�:64 KB 鏁�(sh霉)鎿�(j霉) RAM 澶у皬:26 KB 鐗囦笂 ADC:Yes 宸ヤ綔闆绘簮闆诲:2.97 V to 3.63 V 宸ヤ綔婧害鑼冨湇:- 40 C to + 105 C 灏佽 / 绠遍珨:LQFP-80 瀹夎棰ㄦ牸:SMD/SMT
MCF5280CVM80J 鍔熻兘鎻忚堪:32浣嶅井鎺у埗鍣� - MCU V2CORE NO FLASH RoHS:鍚� 鍒堕€犲晢:Texas Instruments 鏍稿績:C28x 铏曠悊鍣ㄧ郴鍒�:TMS320F28x 鏁�(sh霉)鎿�(j霉)绺界窔瀵害:32 bit 鏈€澶ф檪閻橀牷鐜�:90 MHz 绋嬪簭瀛樺劜鍣ㄥぇ灏�:64 KB 鏁�(sh霉)鎿�(j霉) RAM 澶у皬:26 KB 鐗囦笂 ADC:Yes 宸ヤ綔闆绘簮闆诲:2.97 V to 3.63 V 宸ヤ綔婧害鑼冨湇:- 40 C to + 105 C 灏佽 / 绠遍珨:LQFP-80 瀹夎棰ㄦ牸:SMD/SMT
MCF5281CVF66 鍔熻兘鎻忚堪:IC MPU 32BIT 66MHZ 256-BGA RoHS:鍚� 椤炲垾:闆嗘垚闆昏矾 (IC) >> 宓屽叆寮� - 寰帶鍒跺櫒锛� 绯诲垪:MCF528x 妯欐簴鍖呰:250 绯诲垪:56F8xxx 鏍稿績铏曠悊鍣�:56800E 鑺珨灏哄:16-浣� 閫熷害:60MHz 閫i€氭€�:CAN锛孲CI锛孲PI 澶栧湇瑷倷:POR锛孭WM锛屾韩搴﹀偝鎰熷櫒锛學DT 杓稿叆/杓稿嚭鏁�(sh霉):21 绋嬪簭瀛樺劜鍣ㄥ閲�:40KB锛�20K x 16锛� 绋嬪簭瀛樺劜鍣ㄩ鍨�:闁冨瓨 EEPROM 澶у皬:- RAM 瀹归噺:6K x 16 闆诲 - 闆绘簮 (Vcc/Vdd):2.25 V ~ 3.6 V 鏁�(sh霉)鎿�(j霉)杞夋彌鍣�:A/D 6x12b 鎸暕鍣ㄥ瀷:鍏ч儴 宸ヤ綔婧害:-40°C ~ 125°C 灏佽/澶栨:48-LQFP 鍖呰:鎵樼洡 閰嶇敤:MC56F8323EVME-ND - BOARD EVALUATION MC56F8323
MCF5281CVF80 鍔熻兘鎻忚堪:IC MPU 32BIT COLDF 256-MAPBGA RoHS:鍚� 椤炲垾:闆嗘垚闆昏矾 (IC) >> 宓屽叆寮� - 寰帶鍒跺櫒锛� 绯诲垪:MCF528x 妯欐簴鍖呰:250 绯诲垪:56F8xxx 鏍稿績铏曠悊鍣�:56800E 鑺珨灏哄:16-浣� 閫熷害:60MHz 閫i€氭€�:CAN锛孲CI锛孲PI 澶栧湇瑷倷:POR锛孭WM锛屾韩搴﹀偝鎰熷櫒锛學DT 杓稿叆/杓稿嚭鏁�(sh霉):21 绋嬪簭瀛樺劜鍣ㄥ閲�:40KB锛�20K x 16锛� 绋嬪簭瀛樺劜鍣ㄩ鍨�:闁冨瓨 EEPROM 澶у皬:- RAM 瀹归噺:6K x 16 闆诲 - 闆绘簮 (Vcc/Vdd):2.25 V ~ 3.6 V 鏁�(sh霉)鎿�(j霉)杞夋彌鍣�:A/D 6x12b 鎸暕鍣ㄥ瀷:鍏ч儴 宸ヤ綔婧害:-40°C ~ 125°C 灏佽/澶栨:48-LQFP 鍖呰:鎵樼洡 閰嶇敤:MC56F8323EVME-ND - BOARD EVALUATION MC56F8323